1 /* SPDX-License-Identifier: GPL-2.0 */ 2 /* 3 * Shared Memory Communications over RDMA (SMC-R) and RoCE 4 * 5 * Connection Data Control (CDC) 6 * 7 * Copyright IBM Corp. 2016 8 * 9 * Author(s): Ursula Braun <ubraun@linux.vnet.ibm.com> 10 */ 11 12 #ifndef SMC_CDC_H 13 #define SMC_CDC_H 14 15 #include <linux/kernel.h> /* max_t */ 16 #include <linux/atomic.h> 17 #include <linux/in.h> 18 #include <linux/compiler.h> 19 20 #include "smc.h" 21 #include "smc_core.h" 22 #include "smc_wr.h" 23 24 #define SMC_CDC_MSG_TYPE 0xFE 25 26 /* in network byte order */ 27 union smc_cdc_cursor { /* SMC cursor */ 28 struct { 29 __be16 reserved; 30 __be16 wrap; 31 __be32 count; 32 }; 33 #ifdef KERNEL_HAS_ATOMIC64 34 atomic64_t acurs; /* for atomic processing */ 35 #else 36 u64 acurs; /* for atomic processing */ 37 #endif 38 } __aligned(8); 39 40 /* in network byte order */ 41 struct smc_cdc_msg { 42 struct smc_wr_rx_hdr common; /* .type = 0xFE */ 43 u8 len; /* 44 */ 44 __be16 seqno; 45 __be32 token; 46 union smc_cdc_cursor prod; 47 union smc_cdc_cursor cons; /* piggy backed "ack" */ 48 struct smc_cdc_producer_flags prod_flags; 49 struct smc_cdc_conn_state_flags conn_state_flags; 50 u8 reserved[18]; 51 }; 52 53 /* SMC-D cursor format */ 54 union smcd_cdc_cursor { 55 struct { 56 u16 wrap; 57 u32 count; 58 struct smc_cdc_producer_flags prod_flags; 59 struct smc_cdc_conn_state_flags conn_state_flags; 60 } __packed; 61 #ifdef KERNEL_HAS_ATOMIC64 62 atomic64_t acurs; /* for atomic processing */ 63 #else 64 u64 acurs; /* for atomic processing */ 65 #endif 66 } __aligned(8); 67 68 /* CDC message for SMC-D */ 69 struct smcd_cdc_msg { 70 struct smc_wr_rx_hdr common; /* Type = 0xFE */ 71 u8 res1[7]; 72 union smcd_cdc_cursor prod; 73 union smcd_cdc_cursor cons; 74 u8 res3[8]; 75 } __aligned(8); 76 77 static inline bool smc_cdc_rxed_any_close(struct smc_connection *conn) 78 { 79 return conn->local_rx_ctrl.conn_state_flags.peer_conn_abort || 80 conn->local_rx_ctrl.conn_state_flags.peer_conn_closed; 81 } 82 83 static inline bool smc_cdc_rxed_any_close_or_senddone( 84 struct smc_connection *conn) 85 { 86 return smc_cdc_rxed_any_close(conn) || 87 conn->local_rx_ctrl.conn_state_flags.peer_done_writing; 88 } 89 90 static inline void smc_curs_add(int size, union smc_host_cursor *curs, 91 int value) 92 { 93 curs->count += value; 94 if (curs->count >= size) { 95 curs->wrap++; 96 curs->count -= size; 97 } 98 } 99 100 /* SMC cursors are 8 bytes long and require atomic reading and writing */ 101 static inline u64 smc_curs_read(union smc_host_cursor *curs, 102 struct smc_connection *conn) 103 { 104 #ifndef KERNEL_HAS_ATOMIC64 105 unsigned long flags; 106 u64 ret; 107 108 spin_lock_irqsave(&conn->acurs_lock, flags); 109 ret = curs->acurs; 110 spin_unlock_irqrestore(&conn->acurs_lock, flags); 111 return ret; 112 #else 113 return atomic64_read(&curs->acurs); 114 #endif 115 } 116 117 /* Copy cursor src into tgt */ 118 static inline void smc_curs_copy(union smc_host_cursor *tgt, 119 union smc_host_cursor *src, 120 struct smc_connection *conn) 121 { 122 #ifndef KERNEL_HAS_ATOMIC64 123 unsigned long flags; 124 125 spin_lock_irqsave(&conn->acurs_lock, flags); 126 tgt->acurs = src->acurs; 127 spin_unlock_irqrestore(&conn->acurs_lock, flags); 128 #else 129 atomic64_set(&tgt->acurs, atomic64_read(&src->acurs)); 130 #endif 131 } 132 133 static inline void smc_curs_copy_net(union smc_cdc_cursor *tgt, 134 union smc_cdc_cursor *src, 135 struct smc_connection *conn) 136 { 137 #ifndef KERNEL_HAS_ATOMIC64 138 unsigned long flags; 139 140 spin_lock_irqsave(&conn->acurs_lock, flags); 141 tgt->acurs = src->acurs; 142 spin_unlock_irqrestore(&conn->acurs_lock, flags); 143 #else 144 atomic64_set(&tgt->acurs, atomic64_read(&src->acurs)); 145 #endif 146 } 147 148 static inline void smcd_curs_copy(union smcd_cdc_cursor *tgt, 149 union smcd_cdc_cursor *src, 150 struct smc_connection *conn) 151 { 152 #ifndef KERNEL_HAS_ATOMIC64 153 unsigned long flags; 154 155 spin_lock_irqsave(&conn->acurs_lock, flags); 156 tgt->acurs = src->acurs; 157 spin_unlock_irqrestore(&conn->acurs_lock, flags); 158 #else 159 atomic64_set(&tgt->acurs, atomic64_read(&src->acurs)); 160 #endif 161 } 162 163 /* calculate cursor difference between old and new, where old <= new */ 164 static inline int smc_curs_diff(unsigned int size, 165 union smc_host_cursor *old, 166 union smc_host_cursor *new) 167 { 168 if (old->wrap != new->wrap) 169 return max_t(int, 0, 170 ((size - old->count) + new->count)); 171 172 return max_t(int, 0, (new->count - old->count)); 173 } 174 175 /* calculate cursor difference between old and new - returns negative 176 * value in case old > new 177 */ 178 static inline int smc_curs_comp(unsigned int size, 179 union smc_host_cursor *old, 180 union smc_host_cursor *new) 181 { 182 if (old->wrap > new->wrap || 183 (old->wrap == new->wrap && old->count > new->count)) 184 return -smc_curs_diff(size, new, old); 185 return smc_curs_diff(size, old, new); 186 } 187 188 static inline void smc_host_cursor_to_cdc(union smc_cdc_cursor *peer, 189 union smc_host_cursor *local, 190 struct smc_connection *conn) 191 { 192 union smc_host_cursor temp; 193 194 smc_curs_copy(&temp, local, conn); 195 peer->count = htonl(temp.count); 196 peer->wrap = htons(temp.wrap); 197 /* peer->reserved = htons(0); must be ensured by caller */ 198 } 199 200 static inline void smc_host_msg_to_cdc(struct smc_cdc_msg *peer, 201 struct smc_host_cdc_msg *local, 202 struct smc_connection *conn) 203 { 204 peer->common.type = local->common.type; 205 peer->len = local->len; 206 peer->seqno = htons(local->seqno); 207 peer->token = htonl(local->token); 208 smc_host_cursor_to_cdc(&peer->prod, &local->prod, conn); 209 smc_host_cursor_to_cdc(&peer->cons, &local->cons, conn); 210 peer->prod_flags = local->prod_flags; 211 peer->conn_state_flags = local->conn_state_flags; 212 } 213 214 static inline void smc_cdc_cursor_to_host(union smc_host_cursor *local, 215 union smc_cdc_cursor *peer, 216 struct smc_connection *conn) 217 { 218 union smc_host_cursor temp, old; 219 union smc_cdc_cursor net; 220 221 smc_curs_copy(&old, local, conn); 222 smc_curs_copy_net(&net, peer, conn); 223 temp.count = ntohl(net.count); 224 temp.wrap = ntohs(net.wrap); 225 if ((old.wrap > temp.wrap) && temp.wrap) 226 return; 227 if ((old.wrap == temp.wrap) && 228 (old.count > temp.count)) 229 return; 230 smc_curs_copy(local, &temp, conn); 231 } 232 233 static inline void smcr_cdc_msg_to_host(struct smc_host_cdc_msg *local, 234 struct smc_cdc_msg *peer, 235 struct smc_connection *conn) 236 { 237 local->common.type = peer->common.type; 238 local->len = peer->len; 239 local->seqno = ntohs(peer->seqno); 240 local->token = ntohl(peer->token); 241 smc_cdc_cursor_to_host(&local->prod, &peer->prod, conn); 242 smc_cdc_cursor_to_host(&local->cons, &peer->cons, conn); 243 local->prod_flags = peer->prod_flags; 244 local->conn_state_flags = peer->conn_state_flags; 245 } 246 247 static inline void smcd_cdc_msg_to_host(struct smc_host_cdc_msg *local, 248 struct smcd_cdc_msg *peer) 249 { 250 union smc_host_cursor temp; 251 252 temp.wrap = peer->prod.wrap; 253 temp.count = peer->prod.count; 254 atomic64_set(&local->prod.acurs, atomic64_read(&temp.acurs)); 255 256 temp.wrap = peer->cons.wrap; 257 temp.count = peer->cons.count; 258 atomic64_set(&local->cons.acurs, atomic64_read(&temp.acurs)); 259 local->prod_flags = peer->cons.prod_flags; 260 local->conn_state_flags = peer->cons.conn_state_flags; 261 } 262 263 static inline void smc_cdc_msg_to_host(struct smc_host_cdc_msg *local, 264 struct smc_cdc_msg *peer, 265 struct smc_connection *conn) 266 { 267 if (conn->lgr->is_smcd) 268 smcd_cdc_msg_to_host(local, (struct smcd_cdc_msg *)peer); 269 else 270 smcr_cdc_msg_to_host(local, peer, conn); 271 } 272 273 struct smc_cdc_tx_pend; 274 275 int smc_cdc_get_free_slot(struct smc_connection *conn, 276 struct smc_wr_buf **wr_buf, 277 struct smc_cdc_tx_pend **pend); 278 void smc_cdc_tx_dismiss_slots(struct smc_connection *conn); 279 int smc_cdc_msg_send(struct smc_connection *conn, struct smc_wr_buf *wr_buf, 280 struct smc_cdc_tx_pend *pend); 281 int smc_cdc_get_slot_and_msg_send(struct smc_connection *conn); 282 int smcd_cdc_msg_send(struct smc_connection *conn); 283 int smc_cdc_init(void) __init; 284 void smcd_cdc_rx_init(struct smc_connection *conn); 285 286 #endif /* SMC_CDC_H */ 287